Insights into the Shape-Selective Retention Properties of Porous Graphitic Carbon Stationary Phases and Applicability for Polar Compounds

Author:

Corman Clinton1,Muraco Cory1,Ye Michael1,Michel Frank2

Affiliation:

1. MilliporeSigma

2. Merck KGaA

Abstract

In this article, the ability of porous graphitic carbon (PGC) to discriminate between structurally similar compounds is described. After a brief overview of the particle technology and its use in liquid chromatography (LC), two case studies are presented using small-molecule probes to illustrate the importance on how molecular shape and the ability to interact with the graphitic surface lead to the resolution of structural isomers. Finally, an application of this technology in the area of glycan analysis is showcased where released N-glycans from human immunoglobulin G (IgG) were resolved without derivatization, enabling the glycan profile of a biotherapeutic to be determined.

Publisher

Multimedia Pharma Sciences, LLC

Subject

Analytical Chemistry

Reference10 articles.

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2. Knox, J. H.; Kaur, B.; Millward, G. R. Structure and Performance of Porous Graphitic Carbon in Liquid Chromatography. J. Chromatogr. 1986, 352, 3–25. DOI: 10.1016/S0021-9673%2801%2983368-9

3. Corman, C.; Muraco, C.; Ye, M.; Frantz, C.; Maule, W. Applications Employing New 2.7 μm Porous Graphitic Carbon Particles for U/HPLC. Analytix Reporter 2021, 10, 3–36. https://www.sigmaaldrich.com/deepweb/assets/sigmaaldrich/marketing/ global/documents/264/610/analytix-report-10-br7874en-ms.pdf (accessed 2023-02-08).

4. Knox, J.; Ross, P. Carbon-Based Packing Materials for Liquid Chromatography: Structure, Performance, and Retention Mechanisms. In Advances in Chromatography, vol. 37; Brown, P. R.; Grushka, E., Eds.; M. Dekker, 1997; pp 73–119.

5. Lepont, C.; Gunatillaka, A. D.; Poole, C. F. Retention Characteristics of Porous Graphitic Carbon in Reversed-Phase Liquid Chromatography with Methanol–Water Mobile Phases. Analyst 2001, 126, 1318–1325. DOI: 10.1039/B102719K.

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